Starch-Based Bioplastic Materials for Packaging Industry
Биопластиковые материалы на основе крахмала для упаковочной промышленности
2020-04-22
SCID: 54.1/gyh2pk9v
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bioplastic nanocompositescarbon fiber microelectrodecondensation polymerizationcorn starch bioplasticnanoclay
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Abstract (AI)
In this study, we performed the production of bioplastic from corn starch by condensation polymerization. We used a natural intensifier such as glycerin to make the corn starch into a bioplastic material. Bioplastic and its nanocomposites via carbon fiber microelectrode (CFME), TiO2 and nanoclay were synthesized to study its application in package industry. FTIR-ATR, TGA-DTA, SEM-EDX and mechanical analysis were taken to characterize the bioplastic based nanocomposites. We used different amounts of addition of CFME (0.2%, 0.5% and 1%), TiO2 (1%, 3% and 5%) and nanoclay (1%, 3% and 5%) to obtain the optimum condition for the bioplastic material. We obtained proper results for bioplastic/CFME nanocomposite addition of 1%, bioplastic / TiO2 and bioplastic / nanoclay nanocomposites addition of 5% in the composite material. Based on the literature that can be used in packaging industry without harming the environment, this is our main objective.
Key Findings
1
Bioplastic nanocomposites incorporating carbon fiber microelectrode, TiO2, and nanoclay were synthesized for potential packaging applications.
2
Corn-starch bioplastic was produced through condensation polymerization using glycerin as a natural intensifier.
3
FTIR-ATR, TGA-DTA, SEM-EDX, and mechanical analyses were used to characterize the bioplastic nanocomposites.
4
The reported optimum additions were 1% CFME, 5% TiO2, and 5% nanoclay in the respective bioplastic composites.
5
The study targets environmentally friendly packaging materials based on starch bioplastic and its nanocomposites.
Research Object
Corn-starch-based bioplastic and its nanocomposites containing glycerin, carbon fiber microelectrode (CFME), TiO2, or nanoclay for packaging applications
Research Subject
The composition-dependent physicochemical, thermal, morphological, and mechanical properties of the bioplastic nanocomposites and their suitability for environmentally friendly packaging
Publication Details
Publication Date
2020-04-22
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